• 제목/요약/키워드: zero energy building

검색결과 138건 처리시간 0.024초

국내외 녹색건축인증에서의 커미셔닝 평가기준에 대한 비교 연구 (A Comparative Study on Domestic and International Evaluation Criteria of Commissioning for Sustainable Building Certification)

  • 정다훈;정찬우
    • 한국건설관리학회논문집
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    • 제18권1호
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    • pp.27-36
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    • 2017
  • 국토교통부는 녹색건축물 조성을 촉진하기 위해 '17년 공동주택은 냉,난방 에너지 90%('90년 대비) 절감 목표를 수립하였으며, 2015년 UN 기후변화회의(2015 United Nations Climate Change Conference)에서 당국은 2030년 배출전망 (BAU)인 8억 5060만 ton $CO^2$ 대비 37%를 감축하겠다고 발표하였다. 이를 만족하기 위해서는 가장 많은 탄소 발생을 야기하는 건축물에서 탄소배출 최소화를 위한 조치가 시급하며, 이에 건물 사용 시 발생하는 탄소배출 감축을 위해 필요한 건물 성능 강화를 유도하는 커미셔닝에 대한 관심이 높아지고 있다. 그러나 현재 건설업계에서 커미셔닝은 법제화되어 있지 않고 건설 참여자의 수행의지 및 효과 홍보 부족으로 인해 활성화 되어있지 않다. 또한, 녹색건축으로의 인증을 획득하는 과정에서 조차 커미셔닝은 필수 수행 항목으로 지정되어 있지 않아 국내 커미셔닝은 그 효과 대비 저평가 받고 있는 실정이다. 이에, 본 연구에서는 커미셔닝의 효과에 대해 기술하고, 해외 녹색건축인증 LEED, BREEAM을 기준으로 커미셔닝이 녹색건축에 있어서 어떻게 평가받고 있는지 국내 G-SEED와 비교, 분석하여 국내 녹색건축인증에서의 커미셔닝 필수화를 제안하고 나아가 커미셔닝이 국내에서 활성화 될 수 있도록 건설 주체자의 인식 변화를 유도하고자 한다.

부분부하 특성을 고려한 열원기기의 운전성능 평가 (EA Study on the Operation Performance of Central Plant Equipment According to Part Load Characteristics)

  • 이왕제;강은철;이의준;오병칠;신우철
    • 설비공학논문집
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    • 제25권7호
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    • pp.392-397
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    • 2013
  • To fulfill the demands concerning energy efficiency for zero energy buildings, various technologies of architects and engineers are required. This study aims to estimate the thermal performance of heat source equipment in which part load characteristics are considered in an office building. Overestimation of heat source equipment was reviewed through literature survey, and heating and cooling loads depending on the capacity and division of the equipment were analyzed through a simulation program (DOE-2.1E). The conclusions gained from this study are as follows; 1) The more the division of equipment, the less the heating and cooling energy consumption. 2) When a large item of equipment is divided into two small items of equipment, the optimum application rate showed as 5:5 for chiller, and 7:3 for boiler, respectively.

실측치를 통한 사무소건물 슬래브축열 공조시스템의 적정 축열시간 검토 (Consideration of Appropriate Thermal Storage Time of Air-Conditioning System with Slab Thermal Storage in an Office Building by Use of Measurement Value)

  • 정재훈
    • 설비공학논문집
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    • 제22권10호
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    • pp.719-726
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    • 2010
  • In this paper, the appropriate thermal storage time of an air-conditioning system with slab thermal storage was considered by use of summer measurement values. Two standards of heat extraction rate and criterion function were established as the standard that evaluates appropriateness. When heat extraction rate was a standard, zero hour and seven hours were obtained as appropriate thermal storage time, in the case of evaluation by energy consumption and running cost individually. Also, when criterion function was a standard, the difference between energy consumption and running cost was small, it was because the weight function to room air temperature deviation was much bigger than heat extraction rate.

석탄가스화 복합발전소 건설의 에너지안보 확보편익 추정 (Measurement of the Benefits from Safeguarding Energy Security through Building the Integrated Gasification Combined Cycle Power Plant)

  • 임슬예;최효연;유승훈
    • 에너지공학
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    • 제24권3호
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    • pp.40-47
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    • 2015
  • 석탄가스화 복합발전소는 기존 석탄화력 발전소에 비해 온실가스 및 대기오염물질을 적게 배출할 뿐만 아니라 국제적으로 쉽게 확보할 수 있는 저렴한 저품위 석탄을 사용할 수 있어서 연료를 안정적으로 공급받을 수 있다. 이에 본 논문에서는 석탄가스화 복합발전 건설의 에너지안보 확보편익을 추정하고자 한다. 이를 위해 무작위로 추출된 전국 600가구를 대상으로 설문조사를 수행한 후 얻은 자료에 조건부 가치측정법을 적용하여 분석한 결과를 제시한다. 통계적 효율성의 확보를 위해 이중경계 모형을 적용하며 영(0)의 응답자료를 적절하게 다루기 위해 스파이크 모형을 적용한다. 분석결과 석탄가스화 복합발전소로부터 생산되는 전력 1kWh에 대해 응답자들은 평균적으로 6.05원의 추가적인 지불의사액을 가졌다. 즉 석탄가스화 복합발전소로부터 생산되는 전력에 대한 에너지안보 확보편익은 6.05원/kWh이다. 올해 완공되는 태안 석탄가스화 복합발전소의 예상 연간 발전량은 2.27TWh이므로 에너지안보 확보편익은 연간 13,740백만원으로 추정된다.

건식 유리섬유 심재를 사용한 진공단열재의 단열특성에 관한 연구 (A Study on the Thermal Insulation Performance of Vacuum Insulation Panel Using Dry Processing Glass Fiber Core)

  • 유채중;김민철;고성석
    • 대한건축학회논문집:구조계
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    • 제35권6호
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    • pp.121-128
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    • 2019
  • There is a big move to build zero-energy buildings in the form of passive houses that reduce energy waste worldwide. Korea has set a goal of reducing its greenhouse gas emissions by 37% by 2030 through the activation of green buildings, such as strengthening the energy levels of new buildings and improving the energy efficiency of existing buildings. The use of insulation with high insulation performance is one of the key technologies to realize this, and vacuum insulation is the next generation insulation that blocks the energy flow of the building. In this study, we measured the bonding structure of dry and wet processing glass fiber core materials and compared the insulation performance of vacuum insulation panel. In addition, the insulation performance of vacuum insulation panel was measured according to the thickness of the laminated core. It can be confirmed that the lamination structure of the core and the lamination thickness are important factors for the heat insulating performance of the vacuum insulating panel.

지역 건축물의 에너지 자립을 위한 패시브 외단열 복합패널 개발 연구 (Development of the Passive Outside Insulation Composite Panel for Energy Self-Sufficiency of Building in the Region)

  • 문선욱
    • 한국농촌건축학회논문집
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    • 제20권1호
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    • pp.11-18
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    • 2018
  • The study aims to address the energy crisis and realize self-sufficiency of building as part of local energy independence, breaking away from a single concentrated energy supply system. It is intended to develop modules of the outside insulation composite panels that conform to passive certification criteria and for site-assembly systematization. The method of study first identifies trends and passive house in literature and advanced research. Second, the target performance for development is set, and the structural material is selected and designed to simulate performance. Third, a test specimen of the passive outside insulation curtain wall module designed is manufactured and constructed to test its heat transmission coefficient, condensation performance and airtightness. Finally, analyze performance test results, and explore and propose ways to improve the estimation and improvement of incomplete causes to achieve the goal. The final test results achieved the target performance of condensation and airtightness, and the heat transmission coefficient was $0.16W/(m^2{\cdot}K)$, which is $0.01W/(m^2{\cdot})K$ below the performance target. As for the lack of performance, we saw a need for a complementary design to account for simulation errors. It also provided an opportunity to recognize that insulated walls with performance can impact performance at small break. Thus, to be commercialized into a product with the need for improvement in the design of the joint parts, a management system is needed to increase the precision in the fabrication process.

건축물에너지효율등급 기밀시험이 등급에 미치는 영향분석 (Analysis on Energy Demand Resulting From the Change in Window Area & Installation of Interior Exterior Blinds)

  • 김대원;정광섭;김영일;남아리새;주정경
    • 에너지공학
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    • 제23권1호
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    • pp.40-45
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    • 2014
  • 주거시설에서 환기횟수 0.7회 적용은 실내공기질 향상과 거주자의 쾌적성을 높이고자 100세대 이상은 의무적으로 적용하고 있다. 건축물에너지효율등급에서는 환기횟수를 기준으로한 기밀시험을 실시 하여 그결과 값을 효율등급결과치에 반영함으로서 창호주변의 정밀시공을 유도하고 침기로 인해 손실되는 에너지절감을 꾀하고 있다. 건축물엔지효율등급 현장실사 결과 환기횟수가 0.6~0.71까지 나타났으며 그차이가 에너지 절감량에 크게 영향을 미치는 것으로 나타났다. 유럽의 패시브 하우스 기준이 0.6회 이하의 기밀을 요구하고 있고 우리나라도 2017년 패시브하우스, 2025년 제로하우스를 목표로 하고 있어 비주거 건물의 기밀진단의 의무확대와 고기밀 건물에 대한 연구와 시공방법이 시급한 실정이다.

Predicting the seismic behavior of torsionally-unbalanced RC building using resistance eccentricity

  • Abegaz, Ruth A.;Kim, In-Ho;Lee, Han Seon
    • Structural Engineering and Mechanics
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    • 제83권1호
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    • pp.1-17
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    • 2022
  • The static design approach in the current code implies that the inherent torsional moment represents the state of zero inertial torsional moments at the center of mass (CM). However, both experimental and analytical results prove the existence of a large amount of the inertial torsional moment at the CM. Also, the definition of eccentricity by engineers, which is referred to as the resistance eccentricity, is defined as the distance between the center of mass and the center of resistance, which is conceptually different from the static eccentricity in the current codes, defined as the arm length about the center of rotation. The difference in the definitions of eccentricity should be made clear to avoid confusion about the torsion design. This study proposed prediction equations as a function of resistance eccentricity based on a resistance eccentricity model with advantages of (1) the recognition of the existence of torsional moment at the CM, (2) the avoidance of the confusion by using resistance eccentricity instead of the design eccentricity, and (3) a clear relationship of applied inertial forces at the CM and resisting forces. These predictions are compared with the seismic responses obtained from time-history analyses of a five-story building structure under moderate and severe earthquakes. Then, the trend of the resistance eccentricity corresponding to the maximum edge drift is investigated for elastic and inelastic responses. The comparison given in this study shows that these prediction equations can serve as a useful reference for the prediction in both the elastic and the inelastic ranges.

Characterization of nano-structure pyrolytic char for smart and sustainable nanomaterials

  • N. K. Karthikeyan;S. Elavenil
    • Advances in nano research
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    • 제16권1호
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    • pp.53-69
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    • 2024
  • Advancements in the technology of building materials has led to diverse applications of nanomaterials with the aim to monitor concrete structures. While there are myriad instances of the use of nanoparticles in building materials, the production of smart nano cement-composites is often expensive. Thereupon, this research aims to discover a sustainable nanomaterial from tyre waste using the pyrolysis process as part of the green manufacturing circle. Here, Nano Structure Tyre-Char (NSTC) is introduced as a zero-dimension carbon-based nanoparticle. The NSTC particles were characterized using various standard characterization techniques. Several salient results for the NSTC particles were obtained using microscopic and spectroscopic techniques. The size of the particles as well as that of the agglomerates were reduced significantly using the milling process and the results were validated through a scanning electron microscope. The crystallite size and crystallinity were found to be ~35nm and 10.42%, respectively. The direct bandgap value of 5.93eV and good optical conductivity at 786 nm were obtained from the ultra violet visible spectroscopy measurements. The thermal analysis reveals the presence of a substantial amount of carbon, the rate of maximum weight loss, and the two stages of phase transformation. The FT-Raman confirms the presence of carboxyl groups and a ID/IG ratio of 0.83. Water contact angle around 140° on the surface implies the highly hydrophobic nature of the material and its low surface energy. This characteristic process assists to obtain a sustainable nanomaterial from waste tyres, contributing to the development of a smart building material.

플러스에너지하우스 설계 및 에너지 성능 평가 (Design and Energy Performance Evaluation of Plus Energy House)

  • 김민휘;임희원;신우철;김효중;김현기;김종규
    • 한국태양에너지학회 논문집
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    • 제38권2호
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    • pp.55-66
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    • 2018
  • South Korea aims to shift the 20 percent of electricity supplement from the fossil fuel including the nuclear to renewable energy systems by 2030. In order to realize this agenda in the buildings, the plus energy house is necessary to increase the renewable energy supplement beyond the zero energy house. This paper suggested KePSH (KIER Energy-Plus Solar House) and energy performance of house and renewable energy systems was investigated. The KePSH has the target of generating 40% surplus energy than the conventional house energy consumption. The plus energy house is the house that generates surplus energy from the renewable energy sources than that consumes. In order to minimize the cooling and heating load of the house, the shape design and passive parameters design were conducted. Based on the experimental data of the plug load in the typical house, the total energy consumption of the house was estimated. This paper also suggested renewable energy sources integrated HVAC system using air-source heat pump system. Two cases of renewable energy system integration methods were suggested, and energy performance of the cases was investigated using TRNSYS 17 program. The results showed that the BIPV (building integrated photovoltaic) system (i.e., CASE 1) and BIPV and BIST system (i.e., CASE 2) shows 42% and 29% of plus energy rate, respectivey. Also, CASE 1 can generate 59% more surplus energy compared with the CASE 2 under the same installation area.